Longhi Sonia, Oglesbee Michael
Architecture et Fonction des Macromolécules Biologiques, UMR 6098 CNRS et Universités d'Aix-Marseille I et II, 163, Avenue de Luminy, Case 932, 13288 Marseille Cedex 09, France.
Protein Pept Lett. 2010 Aug;17(8):961-78. doi: 10.2174/092986610791498894.
In this review, we summarize the main experimental data showing the abundance of structural disorder within the measles virus (MeV) nucleoprotein (N) and phosphoprotein (P), and focus on the molecular mechanisms governing the disorder-to-order transition of the intrinsically disordered C-terminal domain of MeV N (N(TAIL)) upon binding to the C-terminal X domain of P (XD). The functional implications of structural disorder are discussed in light of the ability of disordered regions to establish a complex molecular partnership, thereby leading to a variety of biological effects, including tethering of the polymerase complex onto the nucleocapsid template, stimulation of viral transcription and replication, and virus assembly. We also discuss the ability of N(TAIL) to establish interactions with additional cellular co-factors, including the major inducible heat shock protein, which can modulate the strength of the N(TAIL)-XD interaction. Taking into account the promiscuity that typifies disordered regions, we propose that the main functional advantage of the abundance of disorder within viruses would reside in pleiotropy and genetic compaction, where a single gene would encode a single (regulatory) protein product able to establish multiple interactions via its disordered regions, and hence to exert multiple concomitant biological effects.
在本综述中,我们总结了主要实验数据,这些数据表明麻疹病毒(MeV)核蛋白(N)和磷蛋白(P)中存在大量结构无序现象,并重点关注了MeV N蛋白(N(TAIL))内在无序的C末端结构域与P蛋白C末端X结构域(XD)结合时无序到有序转变的分子机制。鉴于无序区域建立复杂分子伙伴关系的能力,进而导致包括将聚合酶复合物束缚到核衣壳模板上、刺激病毒转录和复制以及病毒组装等多种生物学效应,我们讨论了结构无序的功能意义。我们还讨论了N(TAIL)与其他细胞辅助因子建立相互作用的能力,包括主要的诱导型热休克蛋白,其可调节N(TAIL)-XD相互作用的强度。考虑到无序区域的典型混杂性,我们提出病毒中大量无序现象的主要功能优势在于多效性和基因压缩,即单个基因编码一个单一(调节)蛋白产物,该产物能够通过其无序区域建立多种相互作用,从而产生多种伴随的生物学效应。